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March 4, 2026Sensors4 citationsOpen Access

Photonic Terahertz for 6G Communication

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JYJianjun YuFudan UniversityYZY. Z. ZhouUniversity of Science and Technology of China

Key Points

  • The aim is to review recent advances in photonic terahertz communication technologies for 6G applications.
  • Reviewed various device, system, and antenna technologies for THz communication.
  • Discussed electronic bottlenecks and advantages of photonic methods.
  • Analyzed factors affecting bandwidth efficiency in single-row carrier photodiodes.
  • Summarized advancements in multi-dimensional multiplexing and MIMO mechanisms.
  • Identified advantages of photonic methods in generating ultra-wideband signals.
  • Highlighted improvements in bandwidth efficiency through multi-parameter co-optimization.
  • Showcased advancements in high-gain lens antennas for THz systems.

Abstract

Terahertz (THz) communication has become a key enabling technology for the future sixth generation (6G) due to its rich spectrum resources, supporting emerging applications such as holographic communication and ultra-wideband transmission. This article provides a comprehensive review of recent advances in photonic THz communications, covering device, system, and antenna technologies. First, the electronic bottlenecks in conventional THz systems, including limited bandwidth and severe phase noise generated by frequency doubling, are discussed, emphasizing the advantages of photonic methods in ultra-wideband signal generation and seamless integration with fiber-optic networks. Then, the effects of the carrier transit time, absorber layer thickness, and saturation effects on the bandwidth efficiency performance in single-row carrier photodiodes are reviewed, as well as multi-parameter co-optimization strategies for an enhanced performance. In addition, the latest progress in high spectral efficiency (SE) multi-dimensional multiplexing, lightweight high-gain lens antennas and multi-antenna MIMO transmission mechanisms in multi-antenna THz systems are also summarized. Finally, the prospects and challenges of photonic THz communications in long-distance links and space applications are discussed.

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Cite This Study

Yu et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd3dd48f933b5eed972chttps://doi.org/10.3390/s26051575
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